mirror of
https://github.com/sle118/squeezelite-esp32.git
synced 2025-12-08 20:47:08 +03:00
fix some compile issue & add TAS5713
This commit is contained in:
@@ -285,24 +285,15 @@ uint16_t unset_mac_bit(mac_bits bit, uint16_t val){
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return ~(1 << bit) & val;
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}
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static void SetHFlip( struct GDS_Device* Device, bool On ) {
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static void SetLayout( struct GDS_Device* Device, bool HFlip, bool VFlip, bool Rotate ) {
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struct PrivateSpace *Private = (struct PrivateSpace*) Device->Private;
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Private->ReMap = On ? (Private->ReMap & ~(1 << MAC_BIT_MX)) : (Private->ReMap | (1 << MAC_BIT_MX));
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Private->ReMap = HFlip ? (Private->ReMap & ~(1 << MAC_BIT_MX)) : (Private->ReMap | (1 << MAC_BIT_MX));
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Private->ReMap = VFlip ? (Private->ReMap | (1 << MAC_BIT_MY)) : (Private->ReMap & ~(1 << MAC_BIT_MY));
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Device->WriteCommand( Device, L1_CMD_MEMORY_ACCESS_CONTROL );
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Device->WriteData( Device, &Private->ReMap, 1 );
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WriteDataByte(Device,0x00);
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}
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static void SetVFlip( struct GDS_Device *Device, bool On ) {
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struct PrivateSpace *Private = (struct PrivateSpace*) Device->Private;
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Private->ReMap = On ? (Private->ReMap | (1 << MAC_BIT_MY)) : (Private->ReMap & ~(1 << MAC_BIT_MY));
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Device->WriteCommand( Device, 0xA0 );
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Device->WriteData( Device, &Private->ReMap, 1 );
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WriteDataByte(Device,0x00);
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}
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static void DisplayOn( struct GDS_Device* Device ) { Device->WriteCommand( Device, L1_CMD_DISPLAY_ON ); }
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static void DisplayOff( struct GDS_Device* Device ) { Device->WriteCommand( Device, L1_CMD_DISPLAY_OFF ); }
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@@ -356,7 +347,7 @@ static bool Init( struct GDS_Device* Device ) {
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static const struct GDS_Device ILI9341 = {
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.DisplayOn = DisplayOn, .DisplayOff = DisplayOff, .SetContrast = SetContrast,
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.SetVFlip = SetVFlip, .SetHFlip = SetHFlip,
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.SetLayout = SetLayout,
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.Update = Update, .Init = Init,
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};
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@@ -71,6 +71,7 @@ const display_config_t * config_display_get(){
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if ((p = strcasestr(config, "speed")) != NULL) dstruct.speed = atoi(strchr(p, '=') + 1);
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dstruct.hflip= strcasestr(config, "HFlip") ? true : false;
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dstruct.vflip= strcasestr(config, "VFlip") ? true : false;
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dstruct.rotate= strcasestr(config, "rotate") ? true : false;
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return &dstruct;
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}
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@@ -23,6 +23,7 @@ typedef struct {
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char *type;
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bool hflip;
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bool vflip;
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bool rotate;
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} display_config_t;
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const display_config_t * config_display_get();
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esp_err_t config_i2c_set(const i2c_config_t * config, int port);
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@@ -48,7 +48,7 @@ static const char TAG[] = "AC101";
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return b;\
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}
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static bool init(char *config, int i2c_port_num);
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config);
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static void deinit(void);
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static void speaker(bool active);
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static void headset(bool active);
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@@ -70,7 +70,7 @@ static int i2c_port;
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/****************************************************************************************
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* init
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*/
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static bool init(char *config, int i2c_port_num) {
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config) {
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esp_err_t res = ESP_OK;
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char *p;
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@@ -16,7 +16,7 @@ typedef enum { ADAC_ON = 0, ADAC_STANDBY, ADAC_OFF } adac_power_e;
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struct adac_s {
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char *model;
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bool (*init)(char *config, int i2c_port_num);
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bool (*init)(char *config, int i2c_port_num, i2s_config_t *i2s_config);
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void (*deinit)(void);
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void (*power)(adac_power_e mode);
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void (*speaker)(bool active);
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@@ -25,5 +25,6 @@ struct adac_s {
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};
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extern const struct adac_s dac_tas57xx;
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extern const struct adac_s dac_tas5713;
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extern const struct adac_s dac_ac101;
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extern const struct adac_s dac_external;
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@@ -25,7 +25,7 @@ static void speaker(bool active) { }
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static void headset(bool active) { }
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static bool volume(unsigned left, unsigned right) { return false; }
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static void power(adac_power_e mode);
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static bool init(char *config, int i2c_port_num);
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config);
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static bool i2c_json_execute(char *set);
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static esp_err_t i2c_write_reg(uint8_t reg, uint8_t val);
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@@ -38,7 +38,7 @@ static cJSON *i2c_json;
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/****************************************************************************************
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* init
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*/
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static bool init(char *config, int i2c_port_num) {
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config) {
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char *p;
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i2c_port = i2c_port_num;
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@@ -77,7 +77,7 @@ extern struct buffer *streambuf;
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extern struct buffer *outputbuf;
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extern u8_t *silencebuf;
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const struct adac_s *dac_set[] = { &dac_tas57xx, &dac_ac101, NULL };
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const struct adac_s *dac_set[] = { &dac_tas57xx, &dac_tas5713, &dac_ac101, NULL };
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const struct adac_s *adac = &dac_external;
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static log_level loglevel;
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@@ -85,7 +85,6 @@ static log_level loglevel;
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static bool jack_mutes_amp;
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static bool running, isI2SStarted;
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static i2s_config_t i2s_config;
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static int bytes_per_frame;
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static u8_t *obuf;
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static frames_t oframes;
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static bool spdif;
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@@ -158,31 +157,14 @@ void output_init_i2s(log_level level, char *device, unsigned output_buf_size, ch
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jack_mutes_amp = (strcmp(p,"1") == 0 ||strcasecmp(p,"y") == 0);
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free(p);
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#ifdef CONFIG_I2S_BITS_PER_CHANNEL
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switch (CONFIG_I2S_BITS_PER_CHANNEL) {
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case 24:
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output.format = S24_BE;
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bytes_per_frame = 2*3;
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break;
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case 16:
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output.format = S16_BE;
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bytes_per_frame = 2*2;
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break;
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case 8:
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output.format = S8_BE;
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bytes_per_frame = 2*4;
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break;
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default:
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LOG_ERROR("Unsupported bit depth %d",CONFIG_I2S_BITS_PER_CHANNEL);
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break;
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}
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#if BYTES_PER_FRAME == 8
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output.format = S32_LE;
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#else
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output.format = S16_LE;
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bytes_per_frame = 2*2;
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#endif
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output.write_cb = &_i2s_write_frames;
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obuf = malloc(FRAME_BLOCK * bytes_per_frame);
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obuf = malloc(FRAME_BLOCK * BYTES_PER_FRAME);
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if (!obuf) {
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LOG_ERROR("Cannot allocate i2s buffer");
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return;
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@@ -240,6 +222,13 @@ void output_init_i2s(log_level level, char *device, unsigned output_buf_size, ch
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gpio_set_level(i2s_pin_config.data_out_num, 0);
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}
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i2s_config.sample_rate = output.current_sample_rate;
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i2s_config.bits_per_sample = BYTES_PER_FRAME * 8 / 2;
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// Counted in frames (but i2s allocates a buffer <= 4092 bytes)
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i2s_config.dma_buf_len = DMA_BUF_LEN;
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i2s_config.dma_buf_count = DMA_BUF_COUNT;
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dma_buf_frames = DMA_BUF_COUNT * DMA_BUF_LEN;
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char *dac_config = config_alloc_get_str("dac_config", CONFIG_DAC_CONFIG, "model=i2s,bck=" STR(CONFIG_I2S_BCK_IO)
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",ws=" STR(CONFIG_I2S_WS_IO) ",do=" STR(CONFIG_I2S_DO_IO)
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",sda=" STR(CONFIG_I2C_SDA) ",scl=" STR(CONFIG_I2C_SCL)
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@@ -248,7 +237,7 @@ void output_init_i2s(log_level level, char *device, unsigned output_buf_size, ch
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if ((p = strcasestr(dac_config, "model")) != NULL) sscanf(p, "%*[^=]=%31[^,]", model);
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for (int i = 0; adac == &dac_external && dac_set[i]; i++) if (strcasestr(dac_set[i]->model, model)) adac = dac_set[i];
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res = adac->init(dac_config, I2C_PORT) ? ESP_OK : ESP_FAIL;
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res = adac->init(dac_config, I2C_PORT, &i2s_config) ? ESP_OK : ESP_FAIL;
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if ((p = strcasestr(dac_config, "bck")) != NULL) i2s_pin_config.bck_io_num = atoi(strchr(p, '=') + 1);
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if ((p = strcasestr(dac_config, "ws")) != NULL) i2s_pin_config.ws_io_num = atoi(strchr(p, '=') + 1);
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@@ -262,13 +251,6 @@ void output_init_i2s(log_level level, char *device, unsigned output_buf_size, ch
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free(dac_config);
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i2s_config.sample_rate = output.current_sample_rate;
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i2s_config.bits_per_sample = bytes_per_frame * 8 / 2;
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// Counted in frames (but i2s allocates a buffer <= 4092 bytes)
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i2s_config.dma_buf_len = DMA_BUF_LEN;
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i2s_config.dma_buf_count = DMA_BUF_COUNT;
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dma_buf_frames = DMA_BUF_COUNT * DMA_BUF_LEN;
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res |= i2s_driver_install(CONFIG_I2S_NUM, &i2s_config, 0, NULL);
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res |= i2s_set_pin(CONFIG_I2S_NUM, &i2s_pin_config);
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@@ -377,13 +359,13 @@ static int _i2s_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32
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_apply_gain(outputbuf, out_frames, gainL, gainR);
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}
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memcpy(obuf + oframes * bytes_per_frame, outputbuf->readp, out_frames * bytes_per_frame);
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memcpy(obuf + oframes * BYTES_PER_FRAME, outputbuf->readp, out_frames * BYTES_PER_FRAME);
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#else
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optr = (s32_t*) outputbuf->readp;
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#endif
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} else {
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#if BYTES_PER_FRAME == 4
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memcpy(obuf + oframes * bytes_per_frame, silencebuf, out_frames * bytes_per_frame);
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memcpy(obuf + oframes * BYTES_PER_FRAME, silencebuf, out_frames * BYTES_PER_FRAME);
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#else
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optr = (s32_t*) silencebuf;
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#endif
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@@ -397,10 +379,10 @@ static int _i2s_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32
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dsd_invert((u32_t *) optr, out_frames);
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)
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_scale_and_pack_frames(obuf + oframes * bytes_per_frame, optr, out_frames, gainL, gainR, output.format);
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_scale_and_pack_frames(obuf + oframes * BYTES_PER_FRAME, optr, out_frames, gainL, gainR, output.format);
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#endif
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output_visu_export((s16_t*) (obuf + oframes * bytes_per_frame), out_frames, output.current_sample_rate, silence, (gainL + gainR) / 2);
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output_visu_export((s16_t*) (obuf + oframes * BYTES_PER_FRAME), out_frames, output.current_sample_rate, silence, (gainL + gainR) / 2);
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oframes += out_frames;
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@@ -509,8 +491,8 @@ static void *output_thread_i2s(void *arg) {
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/*
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if (synced)
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// can sleep for a buffer_queue - 1 and then eat a buffer (discard) if we are synced
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usleep(((DMA_BUF_COUNT - 1) * DMA_BUF_LEN * bytes_per_frame * 1000) / 44100 * 1000);
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discard = DMA_BUF_COUNT * DMA_BUF_LEN * bytes_per_frame;
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usleep(((DMA_BUF_COUNT - 1) * DMA_BUF_LEN * BYTES_PER_FRAME * 1000) / 44100 * 1000);
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discard = DMA_BUF_COUNT * DMA_BUF_LEN * BYTES_PER_FRAME;
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}
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*/
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i2s_config.sample_rate = output.current_sample_rate;
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@@ -523,20 +505,25 @@ static void *output_thread_i2s(void *arg) {
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}
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// run equalizer
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equalizer_process(obuf, oframes * bytes_per_frame, output.current_sample_rate);
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equalizer_process(obuf, oframes * BYTES_PER_FRAME, output.current_sample_rate);
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// we assume that here we have been able to entirely fill the DMA buffers
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if (spdif) {
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spdif_convert((ISAMPLE_T*) obuf, oframes, (u32_t*) sbuf, &count);
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i2s_write(CONFIG_I2S_NUM, sbuf, oframes * 16, &bytes, portMAX_DELAY);
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bytes /= 4;
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#if BYTES_PER_FRAME == 4
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} else if (i2s_config.bits_per_sample == 32) {
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i2s_write_expand(CONFIG_I2S_NUM, obuf, oframes * BYTES_PER_FRAME, 16, 32, &bytes, portMAX_DELAY);
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#endif
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} else {
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i2s_write(CONFIG_I2S_NUM, obuf, oframes * bytes_per_frame, &bytes, portMAX_DELAY);
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}
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i2s_write(CONFIG_I2S_NUM, obuf, oframes * BYTES_PER_FRAME, &bytes, portMAX_DELAY);
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}
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fullness = gettime_ms();
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if (bytes != oframes * bytes_per_frame) {
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LOG_WARN("I2S DMA Overflow! available bytes: %d, I2S wrote %d bytes", oframes * bytes_per_frame, bytes);
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if (bytes != oframes * BYTES_PER_FRAME) {
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LOG_WARN("I2S DMA Overflow! available bytes: %d, I2S wrote %d bytes", oframes * BYTES_PER_FRAME, bytes);
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}
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SET_MIN_MAX( TIME_MEASUREMENT_GET(timer_start),i2s_time);
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@@ -557,7 +544,7 @@ static void *output_thread_i2s_stats(void *arg) {
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output_state state = output.state;
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if(stats && state>OUTPUT_STOPPED){
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LOG_INFO( "Output State: %d, current sample rate: %d, bytes per frame: %d",state,output.current_sample_rate, bytes_per_frame);
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LOG_INFO( "Output State: %d, current sample rate: %d, bytes per frame: %d",state,output.current_sample_rate, BYTES_PER_FRAME);
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LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD1);
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LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD2);
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LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD3);
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@@ -23,7 +23,7 @@
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static const char TAG[] = "TAS575x/8x";
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static bool init(char *config, int i2c_port_num);
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config);
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static void deinit(void);
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static void speaker(bool active);
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static void headset(bool active);
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@@ -68,10 +68,10 @@ static int tas57_detect(void);
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/****************************************************************************************
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* init
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*/
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static bool init(char *config, int i2c_port_num) {
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i2c_port = i2c_port_num;
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static bool init(char *config, int i2c_port_num, i2s_config_t *i2s_config) {
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char *p;
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i2c_port = i2c_port_num;
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// configure i2c
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i2c_config_t i2c_config = {
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.mode = I2C_MODE_MASTER,
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@@ -131,7 +131,9 @@ static void deinit(void) {
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/****************************************************************************************
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* change volume
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*/
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static bool volume(unsigned left, unsigned right) { return false; }
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static bool volume(unsigned left, unsigned right) {
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return false;
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}
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/****************************************************************************************
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* power
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